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Showing 1 to 15 of 17 results Save | Export
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Li Cheng; Pavlo D. Antonenko; Albert D. Ritzhaupt – Educational Technology Research and Development, 2024
Teachers' beliefs such as pedagogical beliefs, self-efficacy, and technology value beliefs are influential to technology integration practice. This study aims to investigate teachers' beliefs and the impact on their 3D printing integration in science classrooms. A total of 26 K-12 teachers across six states in the U.S. participated in a nationally…
Descriptors: Science Instruction, Elementary School Teachers, Secondary School Teachers, Self Efficacy
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Yuwei Chen; Nat Ku; Bonnie Lin; Jonathan Sun; Andrew Wang; Jin Kim Montclare – Discover Education, 2025
Tangible teaching aids can provide a valuable supplement to traditional textbook-based learning of fundamental STEM concepts. 3D-printed templates detailing the construction of simple parallel and series circuits were incorporated into the lesson plans for 6th-grade introductory physics. Aiming to introduce the concepts of junction and loop rules…
Descriptors: Printing, Computer Peripherals, Science Instruction, Physics
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Huanyu Ren; Jiajun Zhang; Liqi Peng; Huihui Li; Zhi Su – Journal of Chemical Education, 2023
This work presents a homemade multirole 3D-printed modular spectrometer(MPMS), which can be easily assembled like bricks and expanded with several modules to measure different types of spectra, such as UV-vis absorption, fluorescence emission, flame emission/absorption, glow discharge, and even Raman spectra. The spectrometer is designed to be…
Descriptors: Printing, Computer Peripherals, Technology Uses in Education, Spectroscopy
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H. Martin; E. Eisner; J. K. Klosterman – Journal of Chemical Education, 2023
3D printers have facilitated a wealth of 3D printed molecular models illustrating key structural concepts for student learning. However, general adoption of 3D printed models in the organic chemistry classroom proceeds slowly as the majority of consumer-grade 3D (fused deposition modeling (FDM) and resin) printers are inherently monochromatic,…
Descriptors: Printing, Computer Peripherals, Molecular Structure, Organic Chemistry
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Derek J. Bischoff; Michael E. Mackay; Sheldon A. Hewlett – Journal of Chemical Education, 2024
Upper-division undergraduate students are introduced to polymer processing using material extrusion fused filament fabrication 3D printing to make poly(lactic acid) (PLA) mechanical testing specimens. Computer aided design and slicing software packages are used to demonstrate the process of preparing 3D computer models for printing. Following the…
Descriptors: Plastics, Mathematical Models, Printing, Computer Peripherals
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Jones, Oliver A. H.; Stevenson, Paul G.; Hameka, Simone C.; Osborne, Dale A.; Taylor, Patrick D.; Spencer, Michelle J. S. – Journal of Chemical Education, 2021
The use of three-dimensional printing in chemistry education has expanded greatly in the past 10 years. The technique has been used to demonstrate a range of concepts including molecular structure, orbitals, and point groups; to produce chemical equipment such as cuvettes and columns; and even to print out mathematical shapes and functions. Here,…
Descriptors: Science Instruction, Chemistry, Spectroscopy, Printing
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de Almeida, Pamella Aline; Onisaki, Hadassa; de Almeida, Juarez Trindade; Costa, Lúcio Campos; Brockington, Guilherme – Physics Education, 2020
Principles of conservation are essential to the physical understanding of the universe. When thinking about its teaching, especially aimed at basic education, experimental activities can be great allies for its understanding. In this article, we present a demonstrative model using a fidget spinner arranged in a structure constructed using 3D…
Descriptors: Science Instruction, Scientific Principles, Motion, Physics
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Avinal, Merve; Aydin, Abdullah – Journal of Turkish Science Education, 2022
The aim of this study is to investigate the effectiveness of the activities designed with 3D printing technology on the teaching of the sixth-grade systems in our body unit and to determine the views of students on this technology. In this study, a mixed research design in which quantitative and qualitative research methods are used together was…
Descriptors: Learning Activities, Science Education, Printing, Computer Peripherals
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Suchman, Erica L.; McLean, Jennifer; Denham, Steven T.; Shatila, Dana; Prowel, David – HAPS Educator, 2018
We used 3D printing to manufacture models that allow students to explore antibody-epitope interactions. One of the more difficult concepts for students in general microbiology and immunology courses is visualizing the interactions surrounding antibodies and the multiple epitopes found on antigens. We designed and printed antibodies that recognize…
Descriptors: Models, Printing, Microbiology, Lecture Method
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Davis, Eric J.; Wheeler, Kraig – Journal of Chemical Education, 2020
The 2020 pandemic involving SARS-CoV-2 (COVID-19) resulted in a rapid shift to online education for instructors at every level around the world. This shift occurred with little training and minimal resources available due to the rapidity of onset. In this technology report, we describe the use of 3D printing to rapidly manufacture mounts for…
Descriptors: Computer Peripherals, Printing, Manufacturing, Photography
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Blachut, Klaus – School Science Review, 2018
3D printers can do a lot more than just printing nice little giveaways such as keyring pendants or chess pieces. During a project at the Holbein-Gymnasium Augsburg in Bavaria, Germany, students developed a number of helpful tools for chemistry lessons and tested them in classes. Full details of these are now available for free to any teacher who…
Descriptors: Science Instruction, Secondary School Students, Printing, Computer Peripherals
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Tabassum, Tahseen; Iloska, Marija; Scuereb, Daniel; Taira, Noriko; Jin, Chongguang; Zaitsev, Vladimir; Afshar, Fara; Kim, Taejin – Journal of Chemical Education, 2018
3D printing technology has an enormous potential to apply to chemical engineering education. In this paper, we describe several designs of 3D printed mesoreactors (Y-shape, T-shape, and Long channel shape) using the following steps: reactor sketching, CAD modeling, and reactor printing. With a focus on continuous plug flow mesoreactors (PFRs, i.d.…
Descriptors: College Science, Science Instruction, Undergraduate Study, Hands on Science
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Carroll, Felix A.; Blauch, David N. – Journal of Chemical Education, 2017
3D printing was used to prepare models of the calculated geometries of unsaturated organic structures. Incorporation of p orbital isosurfaces into the models enables students in introductory organic chemistry courses to have hands-on experience with the concept of orbital alignment in strained and unstrained p systems.
Descriptors: Science Instruction, Organic Chemistry, Hands on Science, Introductory Courses
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Koehler, Karen E.; Wild, Tiffany A.; Tikkun, Sean – Journal of Science Education for Students with Disabilities, 2018
This article presents the results of a study on the use of 3-D printed models in a science classroom for students with visual impairments and examines whether the use of these models impacts student conceptual understanding and misconceptions related to geosciences concepts, specifically plate tectonics. Data were collected one week prior to…
Descriptors: Science Instruction, Visual Impairments, Educational Technology, Technology Uses in Education
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Higman, Carolyn S.; Situ, Henry; Blacklin, Peter; Hein, Jason E. – Journal of Chemical Education, 2017
Advances in 3D printing technology over the past decade have led to its expansion into all subfields of science, including chemistry. This technology provides useful teaching tools that facilitate communication of difficult chemical concepts to students and researchers. Presented here is the use of 3D printing technology to create tangible models…
Descriptors: Undergraduate Study, College Science, Chemistry, Hands on Science
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